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    eno phosphopyruvate hydratase [ Ferroglobus placidus DSM 10642 ]

    Gene ID: 8779491, updated on 22-Oct-2024

    Summary

    Gene symbol
    eno
    Gene description
    phosphopyruvate hydratase
    Locus tag
    FERP_RS09845
    Gene type
    protein coding
    Organism
    Ferroglobus placidus DSM 10642 (strain: DSM 10642, culture-collection: DSM:10642, type-material: type strain of Ferroglobus placidus)
    Lineage
    Archaea; Methanobacteriati; Methanobacteriota; Archaeoglobi; Archaeoglobales; Archaeoglobaceae; Ferroglobus
    Old locus tag
    Ferp_1960
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    Genomic context

    Sequence:
    NC_013849.1 (1699034..1700242, complement)

    NC_013849.1Genomic Context describing neighboring genes Neighboring gene hypothetical protein Neighboring gene rod shape-determining protein Neighboring gene hypothetical protein Neighboring gene ferritin family protein Neighboring gene 30S ribosomal protein S2 Neighboring gene DNA-directed RNA polymerase subunit K Neighboring gene tRNA-Pro Neighboring gene DNA-directed RNA polymerase subunit N

    General protein information

    Preferred Names
    phosphopyruvate hydratase
    WP_012966436.1

    NCBI Reference Sequences (RefSeq)

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    Genome Annotation

    The following sections contain reference sequences that belong to a specific genome build. Explain

    Reference assembly

    Genomic

    1. NC_013849.1 Reference assembly

      Range
      1699034..1700242 complement
      Download
      GenBank, FASTA, Sequence Viewer (Graphics)

    mRNA and Protein(s)

    1. WP_012966436.1 phosphopyruvate hydratase [Ferroglobus placidus]

      See identical proteins and their annotated locations for WP_012966436.1

      UniProtKB/TrEMBL
      D3S034
      Conserved Domains (2) summary
      PRK00077
      Location:1390
      eno; enolase; Provisional
      cd03313
      Location:5390
      enolase; Enolase: Enolases are homodimeric enzymes that catalyse the reversible dehydration of 2-phospho-D-glycerate to phosphoenolpyruvate as part of the glycolytic and gluconeogenesis pathways. The reaction is facilitated by the presence of metal ions.